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A multi-physics growth model with fluid-structure interactions for blood flow and re-stenosis in rat vein grafts A growth model for blood flow and re-stenosis in grafts

机译:具有流体-结构相互作用的多物理场生长模型用于大鼠静脉移植物的血流和再狭窄一个移植物的血液流动和再狭窄的生长模型

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摘要

Vein graft is commonly used to replace malfunctioned arteries. However, intimal hyperplasia (IH) and re-stenosis often occur after surgery leading to serious clinical problems. A multi-physics computational model with tube wall growth and fluid-structure interactions and an iterative mixed method using finite volume, generalized finite difference and finite elements are introduced to simulate focal intimal hyperplasia and blood flow in rat abdominal artery with a vein graft. Physical parameters and physiological geometries from in vivo experimental data are used in model development and verifications. Our results indicate that the mismatches in geometry and mechanical properties between the host artery and the vein graft cause considerable disturbance in flow shear stress, eddy flow, tube wall deformation, and tensile stress/strain distributions. Focal intimal hyperplasia and re-stenosis process are closely related to eddy flow and low and oscillating shear stresses. A constitutive growth function which governs the IH growth is quantified based on experimental data and computational simulations. Further investigation of effects of other factors such as tensile stress and various cell interactions is needed to fully understand IH growth and re-stenosis process.
机译:静脉移植物通常用于替换有故障的动脉。但是,内膜增生(IH)和再狭窄通常在手术后发生,从而导致严重的临床问题。引入了具有管壁生长和流体-结构相互作用的多物理场计算模型,以及使用有限体积,广义有限差分和有限元的迭代混合方法,通过静脉移植模拟大鼠腹腔动脉的内膜增生和血流。来自体内实验数据的物理参数和生理几何形状用于模型开发和验证。我们的结果表明,宿主动脉和静脉移植物之间的几何形状和机械性能不匹配会在流动剪切应力,涡流,管壁变形和拉伸应力/应变分布方面造成相当大的干扰。局灶性内膜增生和再狭窄过程与涡流以及低和振荡的剪切应力密切相关。基于实验数据和计算模拟,可以确定控制IH生长的本构生长函数。为了充分了解IH的生长和再狭窄过程,需要进一步研究其他因素(例如拉伸应力和各种细胞相互作用)的影响。

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